Wind power generation device and method
A wind power generation device and wind power technology, applied in the direction of friction generators, etc., can solve the problems of low wind energy utilization efficiency and large volume of wind power generation equipment, and achieve the effect of saving space size and improving utilization efficiency.
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Embodiment 1
[0024] figure 1 It is a structural schematic diagram of Embodiment 1 of the wind power generation device of the present invention, as figure 1 As shown, the device of this embodiment may include:
[0025] The first conductive element 11, the second conductive element 12 and the flexible friction layer 13, the flexible friction layer 13 is located between the first conductive element 11 and the second conductive element 12, the first conductive element 11 and the The second conductive element 12 is arranged at an included angle. For example, in this embodiment, the first conductive element 11 and the second conductive element 12 may be a layered structure with conductivity. One end of the first conductive element 11 and the second conductive element 12 is fixed, and the other end can adjust the angle between the first conductive element 11 and the second conductive element 12 according to the wind volume, so as to improve the applicability of the wind power generation device....
Embodiment 2
[0031] This embodiment is a comparative example of Embodiment 1. figure 2 It is a schematic cross-sectional view of the second embodiment of the wind power generation device of the present invention. Such as figure 2 As shown, the wind power generation device of this embodiment is based on the first embodiment, and the first conductive element and the second conductive element are arranged in parallel.
[0032] Such as figure 2 As shown, the device of this embodiment may include: a first conductive element 21, a second conductive element 22, and a flexible friction layer 23, and the flexible friction layer 23 is located between the first conductive element 21 and the second conductive element 22 Between, the first conductive element 21 and the second conductive element 22 are arranged in parallel. The first conductive element 21 has a first friction surface 210 , and the second conductive element 22 has a second friction surface 220 .
[0033] According to the experimen...
Embodiment 3
[0037] Such as figure 1 As shown, the embodiment of the wind power generation device of the present invention is based on the first embodiment, the material of the first friction surface 110 and the material of the flexible friction layer 13 have different triboelectric sequences; the material of the second friction surface 120 and the material of the flexible friction layer 13 materials with different triboelectric series. The wind power generation device in the embodiment of the present invention has a compact structure and a high degree of integration.
[0038] In the specific implementation process, two ways can be adopted.
[0039] One implementation may be: the material of the first friction surface 110 and the second friction surface 120 are chemically modified, so that a functional group that is easy to lose electrons is introduced on the surface of the material whose polarity is positive, and a functional group that is easy to lose electrons is introduced on the surf...
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